Kyrylo Savchenko

Kyrylo Savchenko

Ph.D., associate professor, senior researcher

Languages for professional communication:

Ukrainian, English

Description of the field of scientific research:

Kyrylo's areas of interest include oscillations of mechanical systems, three-dimensional modeling, and finite element analysis.

List of duties:

Kyrylo's main research interests are the development of analytical, experimental, and numerical methods for studying the interaction of similar elements on the stress state and vibrations of their joints as systems with cyclic symmetry. Another critical area of research is the determination of vibration diagnostic indicators of damage, such as fatigue cracking, in structural elements under their forced nonlinear vibrations.

Professional experience:

From 2012 to 2016, Kyrylo was a co-executor of the project "Investigation of the characteristics of oscillations and aerodynamic stability of mechanical systems with regard to inhomogeneities and the influence of various energy dissipation mechanisms."

From 2016 to 2019, he was the executor of the "Strategic and Targeted Support for European-Ukrainian Cooperation in Aviation Research" research project.

From 2018 to 2019, Kyrylo was a co-executor of the research "Development of scientific principles for diagnosing damage to turbine blades turbomachinery by the parameters of their nonlinear oscillations."

Keywords:

  • Electrical engineering

  • Electric power engineering, electrical engineering and electromechanics

  • Efficient energy use

Basic scientific publications:

  • Effect of the contact surfaces orientation in the shrouded flanges and level of vibration excitation in the rotor blades on their vibration stress state

    Savchenko K.V., Zinkovskii A.P., Rzadkowski R. / Strength of Materials. 2020. Vol. 52. P. 205-213.

    Role: Author

  • Investigation of the nonlinearity effect of the shrouded blade assemblies on their forced vibrations

    Zinkovskii A., Savchenko K., Onyshchenko Ye. Advanced Structured Materials. 2021. Vol. 157. P. 159-168.

    Role: Author

  • Influence of the Orientation of Shroud Contact Surfaces on the Static Stress State of Turbine Rotor Blades

    Savchenko K.V., Zinkovskii A.P., Tokar I.G., Kruglii Ya.D. / Strength of Materials. 2014. Vol. 46. P. 493-502.

    Role: Author

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